Ontogeny of pronounced female-biased sexual size dimorphism in the Malaysian cat gecko (Aeluroscalabotes felinus: Squamata: Eublepharidae): A test of the role of testosterone in growth regulation
Autor: | Lukáš Kubička, Henry B. John-Alder, Alison Golinski, Lukáš Kratochvíl |
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Rok vydání: | 2013 |
Předmět: |
Male
medicine.medical_specialty medicine.drug_class Ontogeny Biology Eublepharidae chemistry.chemical_compound Endocrinology Internal medicine Male castration medicine Animals Body Size Testosterone Castration Sex Characteristics Lizards biology.organism_classification Androgen Sexual dimorphism chemistry Female Animal Science and Zoology Sex characteristics |
Zdroj: | General and Comparative Endocrinology. 188:183-188 |
ISSN: | 0016-6480 |
DOI: | 10.1016/j.ygcen.2013.03.016 |
Popis: | Species differences in the effect of male gonadal androgens on male growth are considered a possible mechanism allowing shifts in magnitude and even direction of sexual size dimorphism (SSD) in squamate reptiles. According to the bipotential growth regulation hypothesis, the androgen testosterone (T) enhances male growth in species with male-biased SSD and conversely inhibits male growth in males of female-larger species. In the present study, we describe the ontogeny of the pronounced female-biased SSD and report the effect of T on growth via hormonal manipulations in males and females of the Malaysian cat gecko (Aeluroscalabotes felinus). In accord with the predictions of the bipotential growth regulation hypothesis, growth was inhibited by replacement of T in castrated males. Additionally, exogenous T inhibited growth of females to male-typical levels. Nevertheless, male castration alone did not significantly affect growth, contrary to the prediction of the bipotential growth regulation hypothesis, which contradicts the generality of this hypothesis. Application of exogenous T to females can interfere with normal ovarian function. Therefore, although not directly tested in this study, we suggest that ovarian effects on the ontogeny of SSD in A. felinus are consistent with our results. The development of SSD is a function of differential growth between the sexes, and potential sex-specific growth regulation in both males and females should be taken into account as possible proximate mechanisms responsible for SSD. |
Databáze: | OpenAIRE |
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